首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The PyZgoubi framework and the simulation of dynamic aperture in fixed-field alternating-gradient accelerators
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The PyZgoubi framework and the simulation of dynamic aperture in fixed-field alternating-gradient accelerators

机译:PyZgoubi框架和固定场交替梯度加速器中动态孔径的仿真

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We present PyZgoubi, a framework that has been developed based on the tracking engine Zgoubi to model, optimise and visualise the dynamics in particle accelerators, especially fixed-field alternating-gradient (FFAG) accelerators. We show that PyZgoubi abstracts Zgoubi by wrapping it in an easy-to-use Python framework in order to allow simple construction, parameterisation, visualisation and optimisation of FFAG accelerator lattices. Its object oriented design gives it the flexibility and extensibility required for current novel FFAG design. We apply PyZgoubi to two example FFAGs; this includes determining the dynamic aperture of the PAMELA medical FFAG in the presence of magnet misalignments, and illustrating how PyZgoubi may be used to optimise FFAGs. We also discuss a robust definition of dynamic aperture in an FFAG and show its implementation in PyZgoubi.
机译:我们介绍PyZgoubi,这是一个基于跟踪引擎Zgoubi开发的框架,用于建模,优化和可视化粒子加速器(尤其是固定场交替梯度(FFAG)加速器)中的动力学。我们展示了PyZgoubi通过将Zgoubi封装在易于使用的Python框架中来抽象化Zgoubi,以便允许对FFAG加速器晶格进行简单的构造,参数化,可视化和优化。其面向对象的设计使其具有当前新颖的FFAG设计所需的灵活性和可扩展性。我们将PyZgoubi应用于两个示例FFAG;这包括在磁铁未对准的情况下确定PAMELA医用FFAG的动态孔径,并说明如何使用PyZgoubi优化FFAG。我们还将讨论FFAG中动态孔径的可靠定义,并展示其在PyZgoubi中的实现。

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